室内小细胞繁殖特性研究

R. M. Andrade, R. Paulo, Salomao M. Francisco, Emanuel Teixeira, F. Velez
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引用次数: 0

摘要

室内小型蜂窝网络中无线介质的特性对于获得适当的传播环境建模至关重要。通用软件无线电外设(usrp)和简单的偶极天线可以模拟LTE-Advanced网络。在这项工作中,我们通过考虑一个普通大学院系走廊附近不同的7.32美元× 7.32美元平方米的教室来验证室内飞基站环境的WINNER II传播模型,同时测量放置在49个点的网格中的ue接收的功率(由自己单元教室中心的小型eNodeB辐射)。这些测量要么通过使用软件无线电系统LTE来模拟LTE- advanced网络及其终端,要么通过使用罗德与施瓦茨FSH8频谱分析仪测量终端中的接收功率来进行。在房间1中,通过改变UE的位置,接收功率的最大值出现在靠近中央BS的地方,然后在对面的墙壁上,远离干扰。然而,验证了接收功率不会因为BS和UE天线在大孔径角时的辐射方向图以及非全向水平天线方向图的影响而突然下降。此外,通过在房间2和房间1之间(或房间3和房间2之间)的路径损耗增加这一事实证明存在“壁损耗”的影响。如果我们考虑每面墙的衰减约为7-9 dB,则验证了WINNER II模型在2.625 GHz时对来自不同墙壁的干扰的行为。
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Characterization of Indoor Small Cells Propagation
The characterization of the wireless medium in indoor small cell networks is essential to obtain appropriate modeling of the propagation environment. Universal Software Radio Peripherals (USRPs) and simple dipole antennas can emulate LTE-Advanced networks. In this work, we verify WINNER II propagation modeling for the indoor femtocell environment by considering different classrooms of $7.32 \times 7.32$ square meters near a common University Department corridor while measuring the power received in UEs placed in a grid of 49 points (radiated by the small eNodeB in the centre of the classroom of the own cell). These measurements have been carried out either by using the Software Radio Systems LTE that emulates the LTE-Advanced network and its UEs, or by measuring the received power in the UES with a Rohde & Schwarz FSH8 spectrum analyzer. In room 1, by varying the UE position, the highest values of the received power have occurred close to the central BS, and then in the opposite wall, further away from the interferer. Nevertheless, it was verified that the received power does not decrease suddenly because of the effect of the radiation pattern of the BS and UE antennas for large angles of apertures, as well as due to the non-omnidirectional horizontal antenna pattern. In addition, it was demonstrated that there is an effect of “wall loss” proven by the fact that path loss increases between room 2 and room 1 (or between room 3 and 2). If we consider an attenuation for each wall of circa 7-9 dB the behavior of the WINNER II model at 2.625 GHz for the interference coming across different walls is verified.
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